Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.

Progenitor cell therapy is emerging as a novel treatment for heart failure. However the molecular mechanisms regulating the generation of cardiac progenitor cells is not fully understood. We hypothesized that cardiac progenitor cells are generated from cardiac explant via a process similar to epithe...

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Main Authors: Liudmila Zakharova, Hikmet Nural-Guvener, Mohamed A Gaballa
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3360598?pdf=render
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spelling doaj-d1cb274175384fef968160531b91190d2020-11-24T22:00:07ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0175e3780010.1371/journal.pone.0037800Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.Liudmila ZakharovaHikmet Nural-GuvenerMohamed A GaballaProgenitor cell therapy is emerging as a novel treatment for heart failure. However the molecular mechanisms regulating the generation of cardiac progenitor cells is not fully understood. We hypothesized that cardiac progenitor cells are generated from cardiac explant via a process similar to epithelial to mesenchymal transition (EMT).Explant-derived cells were generated from partially digested atrial tissue. After 21 days in culture, c-Kit+ cells were isolated from cell outgrowth. The majority of explant-originated c-Kit+ cells expressed the epicardial marker Wt1. Cardiac cell outgrowth exhibits a temporal up-regulation of EMT-markers. Notch stimulation augmented, while Notch inhibition suppressed, mesenchymal transition in both c-Kit+ and c-Kit- cells. In c-Kit+ cells, Notch stimulation reduced, while Notch inhibition up-regulated pluripotency marker expressions such as Nanog and Sox2. Notch induction was associated with degradation of β-catenin in c-Kit- cells. In contrast, Notch inhibition resulted in β-catenin accumulation, acquisition of epitheloid morphology, and up-regulation of Wnt target genes in c-Kit- cells.Our study suggests that Notch-mediated reversible EMT process is a mechanism that regulates explant-derived c-Kit+ and c-Kit- cells.http://europepmc.org/articles/PMC3360598?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Liudmila Zakharova
Hikmet Nural-Guvener
Mohamed A Gaballa
spellingShingle Liudmila Zakharova
Hikmet Nural-Guvener
Mohamed A Gaballa
Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.
PLoS ONE
author_facet Liudmila Zakharova
Hikmet Nural-Guvener
Mohamed A Gaballa
author_sort Liudmila Zakharova
title Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.
title_short Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.
title_full Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.
title_fullStr Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.
title_full_unstemmed Cardiac explant-derived cells are regulated by Notch-modulated mesenchymal transition.
title_sort cardiac explant-derived cells are regulated by notch-modulated mesenchymal transition.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Progenitor cell therapy is emerging as a novel treatment for heart failure. However the molecular mechanisms regulating the generation of cardiac progenitor cells is not fully understood. We hypothesized that cardiac progenitor cells are generated from cardiac explant via a process similar to epithelial to mesenchymal transition (EMT).Explant-derived cells were generated from partially digested atrial tissue. After 21 days in culture, c-Kit+ cells were isolated from cell outgrowth. The majority of explant-originated c-Kit+ cells expressed the epicardial marker Wt1. Cardiac cell outgrowth exhibits a temporal up-regulation of EMT-markers. Notch stimulation augmented, while Notch inhibition suppressed, mesenchymal transition in both c-Kit+ and c-Kit- cells. In c-Kit+ cells, Notch stimulation reduced, while Notch inhibition up-regulated pluripotency marker expressions such as Nanog and Sox2. Notch induction was associated with degradation of β-catenin in c-Kit- cells. In contrast, Notch inhibition resulted in β-catenin accumulation, acquisition of epitheloid morphology, and up-regulation of Wnt target genes in c-Kit- cells.Our study suggests that Notch-mediated reversible EMT process is a mechanism that regulates explant-derived c-Kit+ and c-Kit- cells.
url http://europepmc.org/articles/PMC3360598?pdf=render
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AT hikmetnuralguvener cardiacexplantderivedcellsareregulatedbynotchmodulatedmesenchymaltransition
AT mohamedagaballa cardiacexplantderivedcellsareregulatedbynotchmodulatedmesenchymaltransition
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